论文标题
原子薄的闸门范德华超导体的超流体反应
Superfluid response of an atomically thin, gate-tuned van der Waals superconductor
论文作者
论文摘要
在分层的范德华(VDW)材料家族中发现了越来越多的二维超导体。由于样品体积较小,它们的表征在很大程度上仅限于电运输测量。结果,缺乏超级流体对应用磁场的磁性反应的表征,这是任何超导体的定义特性。在这里,我们使用局部磁探针直接测量MOS $ _2 $中可调的,栅极诱导的超导状态的超流体响应。我们发现,后门在非单调上改变了超导过渡温度,而低温下的超流体刚度和正常状态电导率随反向门电压而单调增加。在某些设备中,我们发现直接签名与Berezinskii-Kosterlitz-无尽的过渡一致,而在另一些设备中,我们发现超流体响应的较浅而较浅。我们表明,观察到的行为与障碍在确定超导MOS $ _2 $中的超导性能中起着重要作用。我们的工作表明,VDW超导体的磁性测量已接触到,并且揭示了超流体响应显着偏离了简单的BCS样行为。
A growing number of two-dimensional superconductors are being discovered in the family of layered van der Waals (vdW) materials. Due to small sample volume, their characterization has been largely limited to electrical transport measurements. As a consequence, characterization of the diamagnetic response of the superfluid to an applied magnetic field, a defining property of any superconductor, has been lacking. Here, we use a local magnetic probe to directly measure the superfluid response of the tunable, gate-induced superconducting state in MoS$_2$. We find that the backgate changes the superconducting transition temperature non-monotonically whereas the superfluid stiffness at low temperature and the normal state conductivity monotonically increase with backgate voltage. In some devices, we find direct signatures in agreement with a Berezinskii-Kosterlitz-Thouless transition, whereas in others we find a broadened, shallow onset of the superfluid response. We show that the observed behavior is consistent with disorder playing an important role in determining the superconducting properties in superconducting MoS$_2$. Our work demonstrates that magnetic property measurements are within reach for vdW superconductors and reveals that the superfluid response significantly deviates from simple BCS-like behavior.